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Electrostatic Control of Nonlinear Photonic-Crystal Polaritons in a Monolayer Semiconductor

  • Ekaterina Khestanova
  • , Vanik Shahnazaryan
  • , Valerii K. Kozin
  • , Valeriy I. Kondratyev
  • , Dmitry N. Krizhanovskii
  • , Maurice S. Skolnick
  • , Ivan A. Shelykh
  • , Ivan V. Iorsh
  • , Vasily Kravtsov

Research output: Contribution to journalArticlepeer-review

Abstract

Integration of 2D semiconductors with photonic crystal slabs provides an attractive approach to achieving strong light-matter coupling and exciton-polariton formation in a chip-compatible geometry. However, for the development of practical devices, it is crucial that polariton excitations are easily tunable and exhibit a strong nonlinear response. Here we study neutral and charged exciton-polaritons in an electrostatically gated photonic crystal slab with an embedded monolayer semiconductor MoSe2 and experimentally demonstrate a novel approach to optical control based on polariton nonlinearity. We show that spatial modulation of the dielectric environment within the photonic crystal unit cell results in the formation of two distinct excitonic species with significantly different nonlinear responses of the corresponding charged exciton-polaritons under optical pumping. This behavior enables optical switching with ultrashort laser pulses and can be sensitively controlled via an electrostatic gate voltage. Our results open new avenues toward the development of active polaritonic devices in a compact chip-compatible implementation.

Original languageEnglish
Pages (from-to)7350-7357
Number of pages8
JournalNano Letters
Volume24
Issue number24
DOIs
Publication statusPublished - 19 Jun 2024

Bibliographical note

Publisher Copyright: © 2024 American Chemical Society.

Other keywords

  • electrostatic gating
  • excitons
  • nonlinearity
  • strong coupling
  • transition metal dichalcogenides

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